Research theme for competitive and other funds (12):
データベースと物理モデル統合による材料劣化挙動解明に関する研究
マルチスケールモデリングによる極限環境下材料挙動予測に関する研究
弾性論と分子シミュレーション統合による結晶欠陥と転位の相互作用に関する研究
結晶性材料の線量率効果に関する研究
材質変化検出のための非破壊検査技術開発
イオン加速器連結型トンネル顕微鏡を用いた照射下原子挙動解明に関する研究
Analysis of material degradation behaviors by integrating database and physical models
Multi-scale simulations for predictions of material behaviors under ultimate environments
Interactions between a line dislocation and a defect cluster by combining elastic theory and atomistic simulations
Effects of dose rate on irradiation behavior in crystalline materials
Development of a new non-destructive technique to detect material microstructural changes
Atomistic observations of crystalline material surfaces under irradiation by a linked facility between Scanning Tunnel Microscope and an ion accelerator
Development for a non-destructive evaluation method detecting irradiation-induced microstructure change
(the 5th Annual Asia-Pacific Nuclear Energy Forum on Materials for Nuclear Applications 2011)
Research at the University of Tokyo
(PSU-UT knowledge sharing for the latest achievements 2011)
Our possible collaboration by utilizing the surveillance test specimens for RPV steels
(Initiative of collaboration for Westinghouse-NFI-the University of Tokyo 2011)
Development for a non-destructive evaluation method detecting irradiation-induced microstructure change
(the 5th Annual Asia-Pacific Nuclear Energy Forum on Materials for Nuclear Applications 2011)
Research at the University of Tokyo
(PSU-UT knowledge sharing for the latest achievements 2011)